Roles of silica-coated layer on graphite for thermal conductivity, heat dissipation, thermal stability, and electrical resistivity of polymer composites

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초록

Amphiphile-assisted silica@graphite with a surface resistivity of 10(12)Omega center dot sq(-1) was prepared via a one-step process using either an Ostwald ripening agent (Triton-X) or a bridgemer (PEG) under mild conditions. The composites containing coated fillers showed advantages in terms of their thermal and electrical properties over those using mixture of fillers. The filler possessing optimal size of graphite was incorporated with various polymer matrices such as TPEE, PDMS, epoxy, or HDPE, all of which have different processing characteristics due to their inherent viscosities. Consequently, the silica@graphite incorporated composites were found to have a superior effect on thermal and electrical properties including conductivity, dissipation, stability, and resistivity than boron nitride or alumina filled composites with the conservation of the electrical insulating property above 10(10)Omega center dot sq(-1) for a filler loading of 0-30 vol%. (C) 2018 Elsevier Ltd. All rights reserved.

키워드

Polymer-matrix composites (PMCs)Thermal propertiesElectrical propertiesThermal analysisHEXAGONAL BORON-NITRIDEPOLYVINYLPYRROLIDONEFILLER
제목
Roles of silica-coated layer on graphite for thermal conductivity, heat dissipation, thermal stability, and electrical resistivity of polymer composites
저자
Kim, YeongseonKim, MinjaeSeong, Hong-GyuJung, Ji YoungBaeck, Sung-HyeonShim, Sang Eun
DOI
10.1016/j.polymer.2018.06.056
발행일
2018-07
유형
Article
저널명
Polymer
148
페이지
295 ~ 302